Characterization and Anti-Biofilm Activity of Lytic Enterococcus Phage vB_Efs8_KEN04 against Clinical Isolates of Multidrug-Resistant Enterococcus faecalis in Kenya

Author:

Soro Oumarou1ORCID,Kigen Collins23,Nyerere Andrew4,Gachoya Moses23,Georges Martin23,Odoyo Erick23,Musila Lillian23ORCID

Affiliation:

1. Department of Molecular Biology and Biotechnology, Pan African University Institute for Basic Sciences, Technology, and Innovation, Nairobi P.O. Box 62000-00200, Kenya

2. Department of Emerging Infectious Diseases, Walter Reed Army Institute of Research-Africa, Nairobi P.O. Box 606-00621, Kenya

3. Center for Microbiology Research, Kenya Medical Research Institute, Nairobi P.O. Box 54840-00200, Kenya

4. Department of Medical Microbiology, Jomo Kenyatta University of Agriculture and Technology, Nairobi P.O. Box 62000-00200, Kenya

Abstract

Enterococcus faecalis (E. faecalis) is a growing cause of nosocomial and antibiotic-resistant infections. Treating drug-resistant E. faecalis requires novel approaches. The use of bacteriophages (phages) against multidrug-resistant (MDR) bacteria has recently garnered global attention. Biofilms play a vital role in E. faecalis pathogenesis as they enhance antibiotic resistance. Phages eliminate biofilms by producing lytic enzymes, including depolymerases. In this study, Enterococcus phage vB_Efs8_KEN04, isolated from a sewage treatment plant in Nairobi, Kenya, was tested against clinical strains of MDR E. faecalis. This phage had a broad host range against 100% (26/26) of MDR E. faecalis clinical isolates and cross-species activity against Enterococcus faecium. It was able to withstand acidic and alkaline conditions, from pH 3 to 11, as well as temperatures between −80 °C and 37 °C. It could inhibit and disrupt the biofilms of MDR E. faecalis. Its linear double-stranded DNA genome of 142,402 bp contains 238 coding sequences with a G + C content and coding gene density of 36.01% and 91.46%, respectively. Genomic analyses showed that phage vB_Efs8_KEN04 belongs to the genus Kochikohdavirus in the family Herelleviridae. It lacked antimicrobial resistance, virulence, and lysogeny genes, and its stability, broad host range, and cross-species lysis indicate strong potential for the treatment of Enterococcus infections.

Funder

African Union Commission

AFRICA-ai-JAPAN Project Innovation Research Funds

Publisher

MDPI AG

Reference124 articles.

1. Said, M.S., Tirthani, E., and Lesho, E. (2023). Enterococcus Infections. StatPearls, StatPearls Publishing.

2. Vancomycin resistant Enterococci: A brief review;Raza;J. Pak. Med. Assoc.,2018

3. Enterococci as probiotics and their implications in food safety;Franz;Int. J. Food Microbiol.,2011

4. A Review of Combination Antimicrobial Therapy for Enterococcus faecalis Bloodstream Infections and Infective Endocarditis;Beganovic;Clin. Infect. Dis.,2018

5. Soft Tissue and Wound Infections Due to Enterococcus spp. among Hospitalized Trauma Patients in a Developing Country;Rajkumari;J. Glob. Infect. Dis.,2014

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